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1,568 results for “slope”
Data from: The pyriform egg of the Common Murre (Uria aalge) is more stable on sloping surfaces
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Data from: Propulsion in hexapod locomotion: how do desert ants traverse slopes?
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Raw presence-absence community composition of passerines, rodents, and ants at eastern slope of Mt. Segrila
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Data from: Trophic interactions of fish communities at midwater depths enhance long-term carbon storage and benthic production on continental slopes
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Effects of different functional structure parameters of plant communities on slope runoff in different periods of the year in semiarid grasslands
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ITS dataset for Sumacoa (Gesneriaceae), an arborescent new genus from the Eastern Andean slopes of Ecuador
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Mustard Removal Experiment at Bayview Slope
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Predicting drought tolerance from slope aspect preference in restored plant communities
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Fishing and habitat condition differentially affect size spectra slopes of coral reef fishes
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Fig. 10 in New Cheilostomata (Bryozoa) from NE Atlantic seamounts, islands, and the continental slope: evidence for deep-sea endemism
Fig. 10. Atlantisina acantha gen. et sp. nov., Canary Islands, holotype (MNHN-IB-2014-71). A. Overview of the young, yet mature, colony. B. Close-up of ancestrula. C. Autozooid with orifice; note the large distal ooecial pore and the narrow lateral gymnocystal walls with relatively small communication pores. D. Close-up of ooecium and the suboral crest. E. Lateral view of the suboral crest; note that the tips are all broken. Scale bars: A = 300 µm; B, E = 50 µm; C, D = 100 µm.
Figure 3 in Terrestrial isopods and myriapods in a forested scree slope: subterranean biodiversity, depth gradient and annual dynamics
Figure 3. Activity dynamics of isopod Ligidium germanicum (LIGE); diplopods Mecogonopodium carpathicum (MECA), Polydesmus denticulatus (PODE), Trachysphaera acutula (TRAC); and centipedes Harpolithobius anodus (HAAN), Lithobius forficatus (LIFO), during the period November 2008– November 2009.
Figure 2 in Terrestrial isopods and myriapods in a forested scree slope: subterranean biodiversity, depth gradient and annual dynamics
Figure 2. The non-metric multidimensional scaling ordination analysis (NMS) diagram of Isopoda and Myriapoda collected during both sampling periods; variance explained by axes 1 and 2 as 87.0% and 8.7%, respectively (triangles – depths, dots – species). Abbreviations: i – Isopoda: LIGE – Ligidium germanicum, MEGR – Mesoniscus graniger, TRCA – Trichoniscus carpaticus; d – Diplopoda: JUCU – Julus curvicornis, LEMA – Leptoiulus mariae, LETR – L. trilobatus, MECA – Mecogonopodium carpathicum, POCO – Polydesmus complanatus, PODE – Polydesmus denticulatus, TRAC – Trachysphaera acutula, STST – Strongylosoma stigmatosum; c – Chilopoda: HAAN – Harpolithobius anodus, LI - Lithobius sp. juv., LIFO – Lithobius forficatus, LILU – Lithobius lucifugus; STAC – Strigamia acuminata, STTR – Strigamia transsilvanica.
Geometric model for toppling-prone deformation of layered reverse-dip slope
This paper concentrates on analyzing toppling response of layered reverse-dip slope under the action of geometric feature factors of slope angle, strata thickness and strata dip, so as to establish toppling-prone geometric model for toppling deformation. To achieve this, a total of 144 kinds of combination schemes performed by numerical simulation are carried out on three secondary factors of slope angle and strata dip and thickness. The toppling response of reverse dip slope under the effect of geometric feature factors is obtained using numerical simulation software UDEC. Then a model for toppling prediction is designed by utilizing support vector machine, and followed by a geometric model for possible toppling of reverse-dip slope. The research shows that the geometric model is a quarter of a spheroid with a slope angle of 80°, a strata dip of 80°, and a strata thickness of 0.19 m as the center. The length of the long equatorial radius of the spheroid is 31° (strata dip axial), that of the short equatorial radius is 21° (slope angle axial), and the polar radius is 0.075 m (strata thickness axial), and the ratio of long equatorial radius, short equatorial radius and polar radius is 2.48:1.68:1.00.
Data from: Early maternal loss affects diurnal cortisol slopes in immature but not mature wild chimpanzees
<p>Biological embedding of stress experienced early in life is a mechanism proposed to explain the fitness costs of maternal loss in mammals. This embedding is expected to lead to long-term alterations of the hypothalamic pituitary adrenal (HPA) axis activity. This idea has, however, rarely been tested in wild long-lived animals. We assessed whether, as in humans, maternal loss had short and long-term impacts on orphan wild chimpanzee urinary cortisol levels and diurnal urinary cortisol slopes, both indicative of the HPA axis functioning. Immature orphan chimpanzees who experienced early maternal loss had diurnal cortisol slopes indicative of high activation of the HPA axis and recently orphaned immatures had elevated cortisol levels. However, unlike in humans, the cortisol profiles did not differ between orphan and non-orphan adult male chimpanzees. Our study highlights that long-term alteration of stress physiology related to early life adversity may not be viable in some wild animal populations. </p>
FIGURE 5 in A new species of Eunice Cuvier, 1817 (Polychaeta: Eunicidae) from the slope of the Desventuradas Islands and seamounts of the Nazca Ridge, southeastern Pacific Ocean
FIGURE 5. Paratypes (SF5 (a) and SF7 (b)) red arrows indicate peristomial cirri; c) tubes
FIGURE 3. Eunice decolorhami n in A new species of Eunice Cuvier, 1817 (Polychaeta: Eunicidae) from the slope of the Desventuradas Islands and seamounts of the Nazca Ridge, southeastern Pacific Ocean
FIGURE 3. Eunice decolorhami n. sp.: a) mandibles; b) maxilar complex (paratype SCBUCN 8674).
Figure 7 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Three new species of Exocelina Broun, 1886 from the southern slopes of the New Guinea central range, with introduction of the Exocelina skalei group (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 1007: 129-143. https://doi.org/10.3897/zookeys.1007.59351
Figure 7 Exocelina amabilis sp. nov., paratype A median lobe in ventral view B median lobe in lateral view C right paramere in external view D right male protarsomeres 4–5 in ventral view.
Figure 4 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Three new species of Exocelina Broun, 1886 from the southern slopes of the New Guinea central range, with introduction of the Exocelina skalei group (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 1007: 129-143. https://doi.org/10.3897/zookeys.1007.59351
Figure 4 Habitat of Exocelina brazza sp. nov., a small creek in the primary forest, ca 100 m from the Brazza River.
Figure 2 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Three new species of Exocelina Broun, 1886 from the southern slopes of the New Guinea central range, with introduction of the Exocelina skalei group (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 1007: 129-143. https://doi.org/10.3897/zookeys.1007.59351
Figure 2 Exocelina brazza sp. nov., paratype A median lobe in ventral view B median lobe in lateral view C right paramere in external view D right male protarsomeres 4–5 in ventral view.
Figure 9 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Three new species of Exocelina Broun, 1886 from the southern slopes of the New Guinea central range, with introduction of the Exocelina skalei group (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 1007: 129-143. https://doi.org/10.3897/zookeys.1007.59351
Figure 9 Exocelina mimika sp. nov., paratype A median lobe in ventral view B median lobe in lateral view C right paramere in external view D right male protarsomeres 4–5 in ventral view.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.